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1 Auxin is a crucial plant growth regulator.
2 n remodeling factor, and gibberellin (GA), a plant growth regulator.
3 cides, 19 insecticides, 17 fungicides, and a plant growth regulator.
4 r lettuce commercial cultivars by optimizing plant growth regulators.
5 known about the mechanism of action of these plant growth regulators.
6 ll protoplasts in the presence or absence of plant growth regulators.
7 eld estimations, and management decisions of plant growth regulators.
8 ipening, grapevine producers apply different plant growth regulators.
9 he promoter activity was further enhanced by plant growth regulators, 2,4-dichlorophenoxyacetic acid
14 creased significantly by the addition of the plant growth regulator alpha-naphthalene acetic acid.
16 cursor 12-oxophytodienoic acid (OPDA) act as plant growth regulators and mediate responses to environ
21 vity combines with the action of the classic plant growth regulators auxin and cytokinin and with the
23 ited induction of ethylene production by the plant growth regulator cytokinin, and promoted ACS5 degr
24 anking sequences, as well as optimization of plant growth regulators for efficient chloroplast transf
29 plethora of abiotic and biotic stresses and plant growth regulators indicating a complex regulatory
32 There is increasing evidence that commercial plant growth regulators may protect against abiotic stre
36 nt growth promoting rhizobacteria (PGPR) and plant growth regulators (PGRs) can be applied to improve
37 N-(dimethylamino)succinamic acid, 160 Da), a plant growth regulator, selectively inhibits the KDM2/7
41 ndings indicate that UCN represents a unique plant growth regulator that maintains planar growth of i
42 p in the biosynthesis of ethylene, a gaseous plant growth regulator that plays numerous roles in the
47 e hormones belong to two distinct classes of plant growth regulators, yet both can promote cell elong