Fig. 1
Structural and histochemical features of Solanum agrarium Sendt. (A, C–L) Cross sections and (B) radial longitudinal section. (A–D) Root. (A) Suber with resin accumulation. (B) Voluminous intercellular spaces (asterisk). (C) Cortex with starch accumulation stained black with Lugol (arrow). (D) Cortex with protein reserve (arrow) stained red with XP. (E–H) Leaf with lipophilic compounds in the glandular trichome, with a long stalk. (E) Black with Sudan B black. (F) Red with Sudan IV. (G) Blue and lilac with Nile blue. (H) Blue with NADI. (I–L) Mesocarp with lipophilic compounds. (I) Black with Sudan B black. (J) Orange with Sudan IV. (K) Pink with Nile blue. (L) Blue with NADI. (co) cortex, (nu) nucleus, (pe) periderm, (ph) phloem, (re) resin, (su) suber.
Fig. 2
Structural and histochemical features of Solanum lycocarpum A. St.-Hil. (A–G, I–L, N, O) Cross sections. (H, M) Radial longitudinal section. (A) Root primary structure showing settlement of phellogen at the cortex (arrow). (B–I) Stem. (B) Primary structure with high density of tector trichomes. (C) Bicollateral bundle. (D) Settlement of phellogen at the cortex (arrow). (E and F) Cortical cells with plastids presenting terpenoids. (E) Pink with Nile blue. (F) Blue with NADI. (G) Sieve tube elements of large diameter. (H) Oblique compound sieve plates. (I) Accumulation of crystal sand in the rays and axial parenchyma. (J–L) leaf. (J) Isobilateral mesophyll presenting crystal sand. (K and L) Palisade parenchyma. (K) Lipids stained pink with Nile blue. (L) Alkaloids stained yellow with Ellram reagent. (M–O) Pericarp. (M) Mesocarp cells presenting cellulose walls with pronounced thickness. (N) Low pectin concentration in mesocarp cell walls. (O) Exocarp and mesocarp with alkaloids stained brown with Dragendorff. (ap) axial parenchyma, (ca) cambium, (cc) companion cell, (cl) collenchyma, (co) cortex, (cs) crystal sand, (ec) epidermis cell, (ex) exocarp, (me) mesocarp, (oc) oblique compound plate, (pc) pectin, (ph) phloem, (pi) pith, (pl) plastids, (pp) palisade parenchyma, (pr) protoplast, (ra) ray, (si) sieve plate, (sp) spongy parenchyma, s(t) sieve tube element, (su) suber, (tr) tector trichome, (va) vascular bundle, (xy) xylem, (wa) wall.
Fig. 3
Structural and histochemical features of Solanum palinacanthum Dunal. (A, D–I, K–S) Cross sections. (B–C, J) (tangential longitudinal sections. (A–E) Root bark. (A) Cortex with alkaloids stained brown with Dragendorff. (B) Axial parenchyma with crystal idioblast. (C) Wide rays. (D) Starch reserve in radial cell. (E) Formation of conducing elements at the cambium. (F–J) Stem bark. (F) Establishment of phellogen at the epidermis. (G) Phelloderm presenting flavonoids stained red with DMACA. (H) Crystal sand at the phloem. (I and J) Formation of lysigenous duct containing crystal sand. (K–R) Leaf. (K–M) Short glandular trichome. (K) Mucilage stained red with XP. (L) Lipids stained blue with Nile blue. (M) Phenol stained brown with iron chloride. (N–P) Median vein. (N) Mucilage stained black with tannic acid. (O) Phenols stained brown with iron chloride. (P) Alkaloids stained yellow with Ellram. (Q-R) Palisade parenchyma. (Q) Flavonoids stained red with DMACA. (R) Alkaloids stained yellow-brown with Dittmar. (S) Exocarp with undulated cuticle and single crystals. (ap) axial parenchyma, (ca) cambium, (cc) companion cell, (co) cortex, (cr) crystals, (cs) crystal sand, (ec) epidermis cell, (he) head, l(y) lysigenous duct, (ms) mesophyll, (nu) nucleus, p(a) parenchyma, (pe) periderm, (ph) phloem, (pl) phelloderm, (pp) palisade parenchyma, (ra) ray, (si) sieve plate, (sg) starch grains, (st) sieve tube element, (su) suber, (pd) peduncle, (uc) undulated cuticle, (va) vascular bundle, (wi) width, (wl) cell wall lysis, (xy) xylem.
Fig. 4
Structural and histochemical features of Solanum paniculatum L. (A, G–I) Longitudinal radial sections. (B, C, E, F, L–R) Cross sections. (D, J–K) Tangential longitudinal sections. (A–D) Root bark. (A) Sclerified cortex with voluminous intercellular spaces (asterisk). (B) Cortex with phenols stained brown with dichromate. (C) Phloem with higher proportion of conducing elements (rectangle) than the axial parenchyma (circle) and close rays (dotted line). (D) High radial height. (E–H) stem bark. (E) Sieve tube elements at the pith. (F) Cortex with flavonoids stained red with DMACA. (G) Pectin projections in cortical cells. (H) Sclereids with observable pit. (I–K) sieve tube elements. (I) Oblique plates. (J) Compound plates. (K) Small-diameter sieve areas. (L–R) leaf. (L–M) Glandular trichome. (L) Alkaloids stained brown with Dittmar. (M) Mucilage stained red with XP. (N) Dorsiventral mesophyll. (O–Q) palisade parenchyma, o mucilage stained black with tannic acid. (P) Phenols stained brown with dichromate. (Q) Flavonoids stained red with DMACA. (R) Lignified hypodermis at the abaxial surface of the median vein. (cl) collenchyma, (co) cortex, (cs) crystal sand, (ec) epidermis cell, (ep) external phloem, (ip) internal phloem, (he) head, (hi) height, (hy) hypodermis, (oc) oblique compound plate, (op) oblique plate, (pc) pectin, (pe) periderm, (ph) phloem, (pi) medulla, (pp) palisade parenchyma, (pt) pit, (ra) ray, (sa) sieve areas, (sc) sclerification, (sp) spongy parenchyma, (st) sieve tube element, (xy) xylem.
Fig. 5
Structural and histochemical features of Solanum stipulaceum Roem. & Schult. (A–G, J–M) Cross sections. (H and I) Tangential longitudinal sections. (A–E) root bark. (A) Tangential expansion (dotted line) of ray forming the pseudocortex. (B–E) Protein accumulation at the phloem parenchyma. (B, D) Stained red with XP. (C, E) Stained blue with Coomassie blue. (C) Control test. (F–J) Stem bark. (F) Lipids at the external cortex stained black with Sudan black B. (G) Evident annual rings. (H) Oblique compound plates with several sieve areas. (I) Lateral sieve areas with large diameter. (J) Axial parenchyma presenting cells with large caliber. (K–M) Leaf. (K) Petiole with tector trichomes. (L–M) terpenoids at the vein. (L) Pink and blue with Nile blue. (M) Blue with NADI. (ap) axial parenchyma, (cc) companion cell, (co) cortex, (cs) crystal sand, (fp) functional phloem, (np) non-conducting phloem, (oc) oblique compound plates, (pa) parenchyma, (pe) periderm, (ra) ray, (sa) sieve areas, (sg) starch grains, (st) sieve tube element, (tr) tector trichome, (va) vascular bundle.
Table 1
Structural features of root of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.
Table 2
Histochemical features of root of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.
Table 3
Structural features of stem of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.
Table 4
Histochemical features of stem Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, L., and Solanum stipulaceum Roem. & Schult.
Table 5
Leaf structural features of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.
Table 6
Histochemical leaf features of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.
Table 7
Structural features of pericarps of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.
Table 8
Histochemical features of pericarps of Solanum agrarium Sendtn., Solanum lycocarpum A. St.-Hil., Solanum palinacanthum Dunal, Solanum paniculatum L., and Solanum stipulaceum Roem. & Schult.